Transitioning late-time cosmology with the Hubble parameterization

We investigate a late-time cosmological model for a homogeneous and isotropic space-time in the Rastall theory. We explore the observational constraints on the Hubble parameter by using the latest cosmological datasets such as cosmic microwave background radiation (Planck), baryon acoustic oscillations (DESI) and Type Ia Supernovae (Union 3.0). As a result, we explicitly demonstrate that the specific redshift transition occurs, namely, there happens a phase shift in the evolution of the universe from the initial deceleration era to the current accelerating phase of the cosmological scenario. Furthermore, we show that with the latest dataset of DESI-BAO clubbed with CC, CMB, and Union 3.0, the current value of the Hubble parameter is estimated as H 0 = 66.945 ± 1.094, which can be compatible with the available observations.

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Publication Details

Journal
International Journal of Geometric Methods in Modern Physics
Published
2026-10-07
DOI
https://doi.org/10.1142/s0219887827500125
Primary Topic
Cosmology and Gravitation Theories
Type
article
Field-Weighted Citation Impact
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article

Transitioning late-time cosmology with the Hubble parameterization

Vinod Kumar Bhardwaj, Saibal Ray, Kazuharu Bamba, Akram Ali
International Journal of Geometric Methods in Modern Physics
Cosmology and Gravitation Theories
article

Transitioning late-time cosmology with the Hubble parameterization

Vinod Kumar Bhardwaj, Saibal Ray, Kazuharu Bamba, Akram Ali
article en

Abstract

We investigate a late-time cosmological model for a homogeneous and isotropic space-time in the Rastall theory. We explore the observational constraints on the Hubble parameter by using the latest cosmological datasets such as cosmic microwave background radiation (Planck), baryon acoustic oscillations (DESI) and Type Ia Supernovae (Union 3.0). As a result, we explicitly demonstrate that the specific redshift transition occurs, namely, there happens a phase shift in the evolution of the universe from the initial deceleration era to the current accelerating phase of the cosmological scenario. Furthermore, we show that with the latest dataset of DESI-BAO clubbed with CC, CMB, and Union 3.0, the current value of the Hubble parameter is estimated as H 0 = 66.945 ± 1.094, which can be compatible with the available observations.

International Journal of Geometric Methods in Modern Physics
Openalex Percentile: Top 97%
Cosmology and Gravitation Theories
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